Radiation Scanning Imaging Cabin with Stowable Conveyor
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Solution Overview
Problem
Conventional scanning imaging apparatuses for small vehicles require separate installation and disassembly of the scanning device and conveyor device, making the process cumbersome and inconvenient for relocation.
Innovation Solution
A radiation scanning imaging system with an integrated conveyor device and scanning device within a cabin, allowing simultaneous installation and adjustment, and a conveyor device that can be stowed within the cabin for easy disassembly and transport.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of manufacture
If the scanning device and conveyor device are designed separately, then each device can be optimized independently, but the installation and disassembly process becomes cumbersome and time-consuming
Solution Approach 1:
The patent combines the scanning device and conveyor device into a single integrated apparatus. The scanning device is mounted on the conveyor device, forming a unified structure that can be installed and disassembled as one unit, thereby reducing the time and complexity of separate installation processes while maintaining the functional independence of each component
2Stability of the object's composition
If the conveyor device is fixed outside the cabin, then it provides stable support, but it increases the footprint and complicates relocation
Solution Approach 1:
The conveyor device is designed to be stowable within the cabin when not in use. The conveyor belt and support structures can be retracted or folded into the cabin space, reducing the external footprint during relocation while maintaining stable support functionality when deployed for operation
3Ease of operation
If separate installation of scanning and conveyor devices is required, then each component can be adjusted independently, but the overall setup process becomes complex and inconvenient
Solution Approach 1:
The scanning device is integrated with the conveyor device through a unified mounting structure that allows both components to be installed simultaneously as a single unit. The integration maintains independent adjustability of each component while simplifying the overall installation process into one coordinated operation rather than multiple separate steps
Data Source
Figure 1
Figure 2A
Figure 2B~3A
AI summary
The present disclosure relates to a radiation scanning imaging system, comprising: a cabin body having at least one opening and defining a detection channel used for performing scanning imaging on an object to be scanned, the detection channel extending from the at least one opening into the cabin body; a scanning device provided in the cabin body and used for performing scanning imaging on said object; and a conveying device arranged at the bottom of the cabin body and used for driving said object to advance in the extension direction of the detection channel and pass through the scanning device. The conveying device comprises: a bottom wall for defining the bottom of the cabin body; and at least one door body located at the at least one opening of the cabin body and connected to the bottom wall. Said object enters or leaves the detection channel from the at least one door body, wherein the at least one door body can translate relative to the bottom wall so as to be stored in the cabin body or be unfolded outward from the cabin bod.